Mobile replacement unit for inserting battery module

A mobile exchange unit facilitates flexible battery module swaps in electric vehicles by navigating beneath the vehicle to insert charged modules, addressing the inflexibility of fixed charging and exchange stations.

EP4556301A1Pending Publication Date: 2025-05-21DEUT POST AG
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Patent Information

Application Number
EP2024213627
Authority / Receiving Office
EP · EP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-11-20
Filing Date
2024-11-18
Publication Date
2025-05-21

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Abstract

Among other things, a device is disclosed, comprising means configured for: - navigating a mobile interchangeable unit to a first position beneath a vehicle; - determining at least one insertion device of the mobile interchangeable unit, wherein the at least one insertion device is configured for inserting a battery module placed on the insertion device into the vehicle; and - causing the battery module placed on the determined at least one insertion device to be inserted into the vehicle, wherein the device is part of the mobile interchangeable unit and wherein the means are further configured for: - obtaining vehicle information, wherein the vehicle information represents the vehicle and wherein the determination of the at least one insertion device is based at least partially on the obtained vehicle information
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Description

Technical field

[0001] Exemplary embodiments of the present disclosure relate to an apparatus, a method, a computer program and a system for introducing at least one battery module into a vehicle. background

[0002] For example, in the field of electromobility, vehicles that are at least partially powered by an electric motor have one or more rechargeable battery modules. Such battery modules usually need to be recharged regularly to ensure the vehicle's electric drive can continue to be used. Electric charging stations, for example, can be used for this purpose, although these stations have various disadvantages in their practical use. For example, electric charging stations are permanently installed at a specific location, meaning that vehicles can only use them to charge their battery modules at specific locations. Furthermore, installing an electric charging station is usually very complex.

[0003] An alternative concept involves replacing a vehicle's depleted battery module with a charged one at a battery exchange station instead of charging it at an electric charging station. However, such battery exchange stations are also typically installed at a fixed location and therefore offer only limited flexibility. Summary of exemplary embodiments of the present disclosure

[0004] The present disclosure therefore has the object, among others, of simplifying the provision of battery modules for vehicles.

[0005] According to the present disclosure, an apparatus is disclosed, the apparatus comprising means, and the means being arranged to: Navigating a mobile exchange unit to a first position beneath a vehicle; determining at least one insertion device of the mobile exchange unit, wherein the at least one insertion device is configured to insert a battery module placed on the insertion device into the vehicle; and causing the battery module placed on the determined at least one insertion device to be inserted into the vehicle.

[0006] According to the present disclosure, a method is further disclosed, the method comprising the following steps: Navigating a mobile exchange unit to a first position beneath a vehicle; determining at least one insertion device of the mobile exchange unit, wherein the at least one insertion device is configured to insert a battery module placed on the insertion device into the vehicle; and causing the battery module placed on the determined at least one insertion device to be inserted into the vehicle.

[0007] For example, the device according to the present disclosure is configured to execute and / or control the method according to the present disclosure, or the device according to the present disclosure comprises respective means for executing and / or controlling the method according to the present disclosure. In this case, either all steps of the method can be controlled, or all steps of the method can be executed, or one or more steps can be controlled and one or more steps can be executed. For example, one or more of the means can be formed by one or more processors.

[0008] In a further example, the device according to the present disclosure is a device comprising at least one processor and at least one memory containing program code, wherein the memory and the program code are configured to cause a device with the at least one processor to execute and / or control at least the method according to the present disclosure. Either all steps of the method can be controlled, or all steps of the method can be executed, or one or more steps can be controlled and one or more steps can be executed.

[0009] According to the present disclosure, a computer program is further disclosed, wherein the computer program comprises instructions that cause a device to carry out the steps of the method according to the present disclosure. This can, for example, be the device according to the present disclosure. In a further example, the computer program comprises program instructions that cause a processor to execute and / or control the method according to the present disclosure when the computer program is running on the processor. A processor is to be understood to mean, among other things, control units, microprocessors, microcontrol units such as microcontrollers, digital signal processors (DSPs), application-specific integrated circuits (ASICs) or field-programmable gate arrays (FPGAs).In this case, either all steps of the method can be controlled, or all steps of the method can be carried out, or one or more steps can be controlled and one or more steps can be carried out. The computer program can, for example, be distributable via a network such as the Internet, a telephone or mobile network and / or a local area network. The computer program can be at least partly software and / or firmware of a processor. It can equally be implemented at least partly as hardware. The computer program can, for example, be stored on a computer-readable storage medium, for example a magnetic, electrical, optical and / or other type of storage medium. The storage medium can, for example, be part of the processor, for example a (non-volatile or volatile) program memory of the processor or a part thereof.The storage medium can, for example, be a tangible or physical storage medium.

[0010] For example, the mobile interchangeable unit can be understood as a vehicle (e.g., a transport vehicle) that can move at least partially autonomously and transport one or more battery modules. For example, the mobile interchangeable unit is an unmanned vehicle (e.g., an unmanned transport vehicle). For example, the mobile interchangeable unit can be understood as a mobile robot or a mobile robot system. The mobile interchangeable unit can, for example, have the lowest possible height so that it can move underneath another vehicle (e.g., a passenger car or a truck).

[0011] The device according to the present disclosure may be a part of the mobile interchangeable unit and may be understood, for example, as a control device of the mobile interchangeable unit which is connected to individual components of the mobile interchangeable unit. In another example, the device according to the present disclosure may correspond to the mobile interchangeable unit and comprise all individual components of the mobile interchangeable unit.

[0012] As described below, the mobile exchange unit comprises at least one insertion device on which, for example, a battery module to be transported by the mobile exchange unit can be placed. The mobile exchange unit can comprise a single insertion device or multiple insertion devices, which are arranged, for example, next to one another (e.g., at the same height) as part of the mobile exchange unit.

[0013] To enable the mobile interchangeable unit to move, the mobile interchangeable unit may comprise one or more movement means. The movement means comprise, for example, a motor drive (e.g., an electric motor drive), a plurality of wheels (e.g., omnidirectional wheels or differential wheels) or chains (e.g., a crawler belt), and steering means (e.g., a steering mechanism for steering the wheels). For example, the mobile interchangeable unit further comprises a control device that electrically controls the individual components of the mobile interchangeable unit (e.g., the insertion device or the movement means) and can thus control the movement of the mobile interchangeable unit in order to navigate the mobile interchangeable unit.

[0014] Navigating the mobile interchangeable unit to a first position can be understood, for example, as meaning that a control device of the mobile interchangeable unit controls the movement means (e.g. a motor drive and steering means) of the mobile interchangeable unit such that the mobile interchangeable unit moves from a current position to the first position. For example, the mobile interchangeable unit moves to the first position at least partially remotely or autonomously, using, for example, sensors such as cameras, ultrasonic sensors or infrared sensors to detect and avoid obstacles on the way to the first position. Alternatively or additionally, the mobile interchangeable unit can, for example, use location sensors (e.g. one or more GPS sensors) to navigate the mobile interchangeable unit to the first position.

[0015] The first position is located underneath a vehicle, and the mobile exchange unit is, for example, sufficiently flat so that it can move underneath the vehicle. The vehicle is, for example, a vehicle in which one or more battery modules are to be exchanged. In particular, a battery module transported by the mobile exchange unit is to be introduced into the vehicle in order to exchange a previously discharged battery module of the vehicle. The vehicle is, for example, a passenger car or a truck and is also at least partially electrically powered. For example, the vehicle can be a fully battery-electric vehicle, a plug-in hybrid vehicle, or a hybrid vehicle.

[0016] The first position below the vehicle is located, for example, below a battery module compartment in the underbody of the vehicle, so that when the mobile exchange unit is in the first position, a battery module placed on an insertion device of the mobile exchange unit can be inserted into the vehicle (e.g., into a battery module compartment provided for this purpose). The first position below the vehicle is defined, for example, by GPS coordinates, which are used by the mobile exchange unit to navigate to the first position. In another example, the first position below a vehicle is defined in relation to the vehicle (e.g., by a predetermined distance from the vehicle or from a battery module compartment of the vehicle). For example, one or more reference marks on the vehicle can serve as a reference point in relation to the vehicle to define the first position in relation to the vehicle (e.g.,to enable particularly precise positioning of the mobile exchange unit).

[0017] The determination of at least one insertion device of the mobile interchangeable unit can be understood, for example, as a selection of an insertion device. For example, the mobile interchangeable unit comprises a plurality of insertion devices, wherein the determination of an insertion device comprises, for example, a selection of an insertion device from the plurality of insertion devices of the mobile interchangeable unit. For example, the insertion device is selected according to a predetermined sequence (e.g.an order in which all insertion devices of the mobile interchangeable unit are to be selected one after the other) is determined. In a further example, the insertion device is determined depending on a battery module which is placed on the insertion device. For example, based on information which identifies a battery module to be inserted into the vehicle, a corresponding insertion device on which the identified battery module is placed is determined. For this purpose, information about which battery module is placed on which insertion device of a possible plurality of insertion devices of the mobile interchangeable unit is stored in an electronic memory of the device.

[0018] In another example, determining at least one insertion device can be based on battery module information. Such battery module information can, for example, indicate which battery module is located on which insertion device of the mobile exchange unit. Additionally or alternatively, battery module information can identify a battery module that is to be inserted into the vehicle.

[0019] In a further example, the determination of at least one insertion device may be based on vehicle information, wherein the vehicle information identifies, for example, the vehicle under which the mobile exchange unit is located in the first position and into which a battery module placed on an insertion device of the mobile exchange unit is to be inserted.

[0020] The mobile exchange unit has at least one insertion device, wherein such an insertion device is configured to insert a battery module placed on the insertion device into the vehicle, below which the mobile exchange unit is located in the first position. For example, the insertion device is configured to lift a battery module placed on the insertion device and thus insert it into the vehicle. Accordingly, the insertion device can be understood, for example, as a lifting device.

[0021] For example, an insertion device of the mobile exchange unit comprises a platform on which a battery module can be placed. Furthermore, the insertion device comprises, for example, a lifting mechanism configured to raise the platform and a battery module placed thereon. Such a lifting mechanism may, for example, comprise a hydraulic system, an electric motor, a scissor mechanism, a telescopic boom, and / or other mechanisms.

[0022] Installing the battery module into the vehicle includes, for example, inserting the battery module into a battery module compartment in the vehicle's underbody. As part of the installation process or subsequent to installing the battery module into the vehicle, the battery module can be secured (e.g., fixed) in the vehicle, for example, by sliding the battery module into a retaining device (e.g., including a locking mechanism) of the vehicle and being held there.

[0023] For example, the battery module to be inserted is a charged battery module that replaces a previously discharged battery module in the vehicle. For example, such a discharged battery module is removed from the vehicle before the battery module placed on the insertion device is inserted into the vehicle. For this purpose, the mobile exchange unit can, for example, have at least one removal device.

[0024] A battery module can be understood, for example, as a component of a battery stack (e.g., a battery pack). For example, a single battery module can contain one or more battery cells (e.g., lithium-ion battery cells), which, for example, provide electrical energy to the vehicle's drive motor.

[0025] For example, causing the battery module placed on the specific at least one insertion device to be inserted into the vehicle comprises controlling the insertion device determined in the previous step by the device, so that, for example, a lifting mechanism of this specific insertion device is activated and thus causes this lifting mechanism to lift the battery module placed on the platform of the insertion device and insert it into the vehicle.

[0026] In an example in which more than one insertion device of the mobile exchange unit was determined in a previous step, for example, for each of the determined insertion devices, the battery module placed on the respective insertion device is successively inserted into the vehicle.

[0027] Advantageously, the device according to the present disclosure thus makes it possible to advantageously introduce one or more battery modules into a vehicle and, for example, to replace previously discharged battery modules without having to rely on a permanently installed battery exchange station. Instead, the mobile exchange unit is used, which can move underneath the vehicle in question. Advantageously, the vehicle in question can be parked, for example, in a conventional parking space (e.g., a public parking lot) for the duration of the battery exchange. In particular, the vehicle in question does not have to be parked in a permanently installed parking space of a battery exchange station for the exchange process and then moved away from such a permanently installed parking space after the exchange process.

[0028] If, for example, the vehicle is a truck, this truck does not have to be moved to replace a battery module, which advantageously means that the truck driver's possible rest periods are not disrupted. If, for example, the mobile swap unit carries out multiple battery swap operations on several trucks, these trucks can advantageously be parked in conventional parking spaces and, for example, at a normal distance from one another. In this way, the use of the mobile swap unit saves space compared to the use of permanently installed battery swap stations or permanently installed electric charging stations. A single mobile swap unit is advantageously sufficient for this type of battery swap on several trucks.Using conventional charging stations or battery swap stations, however, would require a large number of stations to avoid moving trucks before and after charging / replacing battery modules. The mobile swap unit advantageously eliminates the effort required to install such conventional stations.

[0029] Further advantages of the exemplary aspects of the present disclosure are described below with reference to exemplary embodiments, the disclosure of which is intended to apply equally to the device, the method and the computer program of the present disclosure.

[0030] In an exemplary embodiment according to the present disclosure, the mobile exchange unit, including the at least one insertion device, comprises a plurality of insertion devices, wherein the insertion devices are each configured to insert a battery module placed on the respective insertion device, and wherein the means of the device according to the present disclosure are further configured to: Determining at least one further insertion device from the plurality of insertion devices; and causing the insertion of a further battery module placed on the determined at least one further insertion device into the vehicle.

[0031] For example, as described above, in addition to determining at least one insertion device, at least one further insertion device can also be determined. Accordingly, for example, a first insertion device, a second insertion device, and further additional insertion devices can be determined. As described above for determining the at least one insertion device, the determination of the at least one further insertion device can also be based on one or more pieces of information (e.g., battery module information or vehicle information).

[0032] The insertion devices of the plurality of insertion devices of the mobile exchange unit are arranged, for example, one behind the other and / or next to one another on the mobile exchange unit, wherein the insertion devices are arranged, for example, in one plane on the mobile exchange unit. For example, the mobile exchange unit comprises two, four, six or even more insertion devices on which respective battery modules can be placed. For example, the battery modules placed on the respective insertion device are all intended to be inserted into a specific vehicle. In another example, the battery modules placed on the respective insertion device are intended for several vehicles, wherein these several vehicles are approached one after the other by the mobile exchange unit in order to insert the corresponding battery modules.

[0033] For example, bringing about the introduction of the battery module placed on the specific at least one further introduction device into the vehicle comprises controlling the one further introduction device determined in the previous step, so that, for example, a lifting mechanism of this specific further introduction device is activated and thus causes this lifting mechanism to lift the battery module placed on the platform of the further introduction device and to introduce it into the vehicle.

[0034] By inserting multiple battery modules into the vehicle individually using multiple insertion devices, the mobile exchange unit can advantageously have the lowest possible height while still transporting a large number of battery modules. This allows the mobile exchange unit to move underneath another vehicle (e.g., a passenger car or a truck), even when transporting a large number of battery modules.

[0035] In an exemplary embodiment, the means of the device according to the present disclosure are further configured to: Navigating the mobile exchange unit, after inserting the at least one battery module into the vehicle and before inserting the at least one further battery module into the vehicle, from the first position to a second position below the vehicle.

[0036] For example, the mobile exchange unit is located in front of the vehicle and during the insertion of the at least one battery module in the first position below the vehicle, so that the specific, at least one insertion device is located under a battery module compartment in the underbody of the vehicle. For example, if the mobile exchange unit is in the first position, the battery module placed on the at least one insertion device of the mobile exchange unit can be inserted into the battery module compartment by lifting the platform of the insertion device.

[0037] After such an insertion of the at least one battery module, the mobile exchange unit can be navigated to a second position underneath the vehicle before the at least one further battery module is inserted into the vehicle. This second position is selected, for example, such that the specific at least one further insertion device is located underneath a battery module compartment in the underbody of the vehicle. If, for example, the mobile exchange unit is in the second position, the further battery module placed on the at least one further insertion device of the mobile exchange unit can be inserted into the battery module compartment by lifting the platform of the further insertion device. For example, the further battery module is inserted in this way within the battery module compartment underneath the previously inserted at least one battery module.

[0038] Like the first position, the second position can be defined, for example, by GPS coordinates, which are used by the mobile interchangeable unit to navigate to the second position. In another example, the second position is defined below a vehicle with respect to the vehicle (e.g., by a predetermined distance from the vehicle or from a battery module compartment of the vehicle). For example, one or more reference marks on the vehicle can serve as a reference point with respect to the vehicle to define the second position with respect to the vehicle (e.g., to enable particularly precise positioning of the mobile interchangeable unit).

[0039] Advantageously, by navigating the mobile exchange unit from the first to the second position between the insertion of the at least one and the further battery module, the two battery modules can be inserted into the vehicle such that they are arranged one below the other (e.g., in the form of a battery stack) within a battery module compartment of the vehicle. However, the battery modules arranged one above the other in this way are advantageously located on different insertion devices during transport by the mobile exchange unit, so that the overall height of the loaded mobile exchange unit can be reduced and movement underneath the vehicle can be enabled.

[0040] In an exemplary embodiment, the means of the device according to the present disclosure are further configured to: After the insertion of the at least one battery module, causing the insertion of at least one further battery module placed on the specific at least one insertion device into the vehicle.

[0041] For example, the mobile exchange unit is located in the first position below a battery module compartment of the vehicle when inserting the at least one battery module and also when inserting the one additional battery module, so that the additional battery module is inserted within the battery module compartment below the previously inserted at least one battery module. For example, after inserting the at least one battery module, the at least one insertion device is reloaded with the one additional battery module before the additional battery module is inserted into the vehicle using the at least one insertion device.For example, after the insertion of at least one battery module, the mobile exchange unit is navigated to a battery module station where the mobile exchange unit is loaded with the additional battery module, in particular on the same insertion device on which the previously inserted battery module was placed. For example, the mobile exchange unit is then navigated back to the first position underneath the vehicle before the additional battery module is inserted into the vehicle. For example, the additional battery module is inserted in this way within a battery module compartment underneath the previously inserted at least one battery module.

[0042] By inserting several battery modules into the vehicle, in particular individually, from the same insertion device, the mobile exchange unit can advantageously have the lowest possible height, since only a single battery module is placed on the corresponding insertion device. Accordingly, the mobile exchange unit can be located, for example, underneath another vehicle (e.g.a passenger car or a lorry), even if it transports a total of a large number of battery modules and brings them into the vehicle. Advantageously, it is already sufficient for this if the mobile exchange unit, for example, only has one insertion device. Furthermore, if the mobile exchange unit is in the first position below the vehicle, for example when inserting the at least one battery module and the one further battery module, the two battery modules can be inserted into the vehicle in such a way that they are arranged one below the other (e.g. in the form of a battery stack) within a battery module compartment of the vehicle.

[0043] In an exemplary embodiment according to the present disclosure, the at least one insertion device and / or the plurality of insertion devices of the mobile exchange unit are configured to insert the at least one battery module and the at least one further battery module into the vehicle such that the at least one battery module and the at least one further battery module form a single battery stack within the vehicle.

[0044] For example, a battery stack (e.g., a battery pack) can be understood as at least two battery modules arranged one below the other, wherein these battery modules arranged one below the other are, for example, electrically connected to one another. For example, such a battery stack can be formed within the vehicle (e.g., in a battery module compartment of the vehicle) by first inserting the at least one battery module into the vehicle and then inserting the at least one further battery module below the at least one battery module.

[0045] Advantageously, a battery stack composed of several individual battery modules can cover a vehicle's various power requirements. For example, one battery module is sufficient to operate the vehicle, and additional battery modules in a battery stack can provide the vehicle with additional electrical energy, thereby increasing the vehicle's range, for example.

[0046] In an exemplary embodiment according to the present disclosure, the at least one battery module and the at least one further battery module are arranged one below the other within the battery stack and / or are electrically connected to one another.

[0047] For example, the at least one battery module and the at least one further battery module are electrically connected to one another by being electrically connected in series or parallel (e.g., to achieve a desired electrical voltage or electrical capacity). An electrical connection between the two battery modules can be achieved, for example, by additional connecting structures of the battery modules, which physically connect the battery modules to one another and ensure electrical contact between the battery modules. For example, the vehicle into which the battery modules are installed can comprise a battery management system that monitors the state of the battery modules and, for example, controls the discharging process.

[0048] In an exemplary embodiment, the means of the device according to the present disclosure are further configured to: Effecting the removal of a battery module from the vehicle before introducing the at least one and / or the at least one further battery module into the vehicle, wherein the mobile exchange unit has at least one removal device for removing a battery module from the vehicle.

[0049] For example, a removal device is constructed like an insertion device, so that, for example, an insertion device of a mobile interchangeable unit can simultaneously be used as a removal device of the mobile interchangeable unit, or vice versa. For example, a removal device of the mobile interchangeable unit comprises a platform on which a battery module can be placed. Furthermore, the removal device comprises, for example, a lifting mechanism configured to lower the platform and a battery module placed thereon. Such a lifting mechanism can, for example, comprise a hydraulic system, an electric motor, a scissor mechanism, a telescopic boom, and / or other mechanisms.

[0050] Removing the battery module from the vehicle includes, for example, removing the battery module from a battery module compartment in the vehicle's underbody. As part of the removal or prior to removing the battery module from the vehicle, the battery module may be released in the vehicle (e.g., released from a mounting in the vehicle), for example, by removing the battery module from a retaining device (e.g., including a locking mechanism) of the vehicle.

[0051] For example, the battery module to be installed is a discharged battery module in the vehicle that is replaced with a charged battery module. For example, such a discharged battery module is removed from the vehicle before the battery module, which is placed on an insertion device, is inserted into the vehicle.

[0052] Before the removal is carried out, for example, the mobile exchange unit is navigated to a removal position underneath the vehicle so that the removal of a battery module takes place while the mobile exchange unit is in the removal position.

[0053] In an exemplary embodiment, the means of the device according to the present disclosure are further configured to: Obtaining at least one battery module information item, wherein the battery module information represents a battery module, and wherein determining the at least one insertion device is based at least partially on the obtained battery module information

[0054] The battery module information can be understood as electronic information which is encoded, for example, in electronic form (e.g., binary). In particular, the battery module information can be obtained by transmitting it from other means (e.g., communication means or sensor means) to the means of the device.

[0055] For example, the battery module information represents a battery module by including an identifier of the battery module, wherein such an identifier (e.g., a designation or an address) of the battery module uniquely identifies the battery module. For example, the battery module represented by a piece of battery module information is determinable (e.g., identifiable) based on this piece of battery module information. In addition to representing a battery module, the battery module information may indicate further information (e.g., further parameters).

[0056] In one example, the received battery module information represents (e.g., identifies or characterizes) a battery module that is to be inserted into the vehicle. For example, the mobile exchange unit has a plurality of insertion devices on which respective battery modules are placed. Received battery module information then represents, for example, a specific battery module from the plurality of battery modules that is to be inserted into the vehicle. In such an example, the battery modules placed on the remaining insertion devices can, for example, be intended for a different vehicle and can therefore be inserted into this other vehicle at a later time.

[0057] The determination of the at least one insertion device is based at least partially on the obtained battery module information. If, for example, the battery module information represents a battery module that is to be inserted into the vehicle, the insertion device on which the battery module represented by the battery module information is placed is determined based on the battery module information. In such an example, the determination of the insertion device can additionally be based on information (which is stored, for example, in an electronic memory of the device) which indicates, for the plurality of insertion devices of the mobile exchange unit, whether and which battery module is placed on the respective insertion device.

[0058] Advantageously, based on the battery module information, a specific battery module can be specifically selected, which can then be inserted into the vehicle. When transporting a large number of battery modules on the mobile exchange unit, the insertion of the battery modules placed on the various insertion devices does not necessarily have to follow a predetermined sequence, but can be specifically controlled (e.g., remotely controlled) using the battery module information.

[0059] In another example, the received battery module information represents (e.g., identifies or characterizes) a battery module that is placed on a particular insertion device. In such an example, the battery module information may, for example, represent an identifier (e.g., a designation or an address) of the battery module and additionally (e.g., at least implicitly) represent an identifier (e.g., a designation or an address) of the insertion device on which the battery module is placed. In addition to such battery module information, there may be information (e.g., stored in an electronic memory of the device) that characterizes a particular battery module that is to be inserted into the vehicle.For example, the battery module information then shows on which insertion device of the mobile exchange unit the battery module that is to be inserted into the vehicle is placed, so that this insertion device can be determined based on the battery module information.

[0060] Advantageously, the device can therefore use the battery module information to detect, for example, for a plurality of insertion devices of the mobile exchange unit, whether and which battery module is placed on a respective insertion device

[0061] In an exemplary embodiment, the device according to the present disclosure further comprises sensor means configured to obtain the battery module information from the battery module represented by the battery module information.

[0062] For example, battery module information is represented by an optically detectable code (e.g., a barcode or a QR code) applied to the battery module (e.g., printed on a housing of the battery module). The sensor means of the device can then, for example, comprise a code scanner (e.g., an optical sensor such as a camera) that scans the optically detectable code from the battery module. In another example, the sensors can comprise an electronic receiver that receives, for example, the battery module information in the form of an electrical signal from the battery module via short-range radio communication (e.g., Bluetooth, NFC, or RFID). For example, the battery module is then equipped with an electrical transmitter that transmits the battery module information so that it can be received by the sensor means of the mobile exchange unit.

[0063] For example, the sensor means are each arranged on or at least near a respective insertion device of the mobile exchange unit. For example, a code scanner or an electrical receiver is located on each platform of an insertion device on which a corresponding battery module can be placed as part of the sensor means. If a battery module is placed on a specific insertion device, for example, the optically detectable code applied to this battery module is scanned by a code scanner arranged on the platform of the insertion device and transmitted to the device as battery module information.For example, information is stored in the device as to which code scanner is arranged on which platform of the respective insertion device. By receiving the battery module information at the device from a specific code scanner, the battery module information additionally indicates (e.g. at least implicitly) on which insertion device the battery module represented by the battery module information is placed.

[0064] In an exemplary embodiment, the device according to the present disclosure further comprises communication means configured to receive the battery module information from a backend server.

[0065] For example, the battery module information is received by communication means of the device via a wireless communication network. For example, the communication means of the device then comprise a mobile radio interface which can receive the battery module information from the backend server via a mobile radio network. The backend server can be understood, for example, as a management server on which it is determined in which vehicle which battery module is to be inserted and / or removed by a mobile exchange unit (e.g. from a plurality of mobile exchange units). Battery module information transmitted from the backend server to the device therefore represents, for example, a battery module which was previously determined by the backend server and which is to be inserted into the vehicle.

[0066] In an exemplary embodiment, the means of the device according to the present disclosure are further configured to: Obtaining vehicle information, wherein the vehicle information represents the vehicle and wherein determining the at least one insertion device is based at least partially on the obtained vehicle information

[0067] The vehicle information can be understood as electronic information which is, for example, encoded in electronic form (e.g., binary). In particular, the vehicle information can be obtained by transmitting it from other means (e.g., communication means or sensor means) to the means of the device. For example, the vehicle information is transmitted to the device from a backend server or from the vehicle represented by the vehicle information. For example, the vehicle information represents a vehicle by containing an identifier of the vehicle, wherein such an identifier (e.g., a designation or an address) of the vehicle uniquely identifies the vehicle. For example, the vehicle represented by vehicle information can be determined (e.g., identifiable) based on this vehicle information.In addition to the representation of a vehicle, the vehicle information can display further information (e.g. further parameters).

[0068] In particular, the vehicle information represents the vehicle below which the first position is located and into which the device inserts at least one battery module after determining the at least one insertion device. For example, the vehicle information is obtained together with position information (e.g., received together from a backend server) that indicates the first position and is used to navigate the mobile exchange unit to the first position. In another example, the vehicle information is obtained after navigating or during navigating to the first position.

[0069] The at least one insertion device is determined, for example, at least partly based on the vehicle information. For example, the mobile exchange unit transports a plurality of battery modules, these being intended for different vehicles. If the device then receives, for example, vehicle information which represents a vehicle, the device can determine which of the transported battery modules is intended for this vehicle and is to be inserted into this vehicle. The device can then determine (e.g. based on battery module information) on which insertion device a battery module to be inserted is placed and thus determine the at least one insertion device.Determining the at least one insertion device can, for example, additionally be based on received battery module information, for example if this additional battery module information indicates a battery module which is to be inserted into a specific vehicle (e.g. into the vehicle represented by the vehicle information).

[0070] Advantageously, based on the received vehicle information, the device can identify a specific vehicle into which a battery module is to be inserted. This is helpful, for example, when the mobile exchange unit consecutively addresses several vehicles and accordingly transports a large number of battery modules, each of which is intended for a different vehicle. In such cases, based on the vehicle information, the device can, for example, identify which vehicle is about to be inserted into a battery module and thus determine the appropriate battery module for that vehicle.

[0071] In an exemplary embodiment, the device according to the present disclosure further comprises communication means configured to receive the vehicle information from the vehicle or from a backend server.

[0072] For example, the vehicle information is received by the device's communication means via short-range radio communication (e.g., Bluetooth, NFC, or RFID) from the vehicle, wherein the vehicle information represents this vehicle. In this case, the device's communication means comprise, for example, a short-range radio communication interface for receiving the vehicle information, and the vehicle information is transmitted from a corresponding short-range radio communication interface of the vehicle.

[0073] For example, the vehicle information transmitted by the vehicle can only be received in a spatially limited area around the vehicle, so that the device only receives the vehicle information, for example, when the mobile interchangeable unit approaches the vehicle (e.g., while the mobile interchangeable unit is navigating to the first position below the vehicle). Advantageously, the device can then, for example, use the vehicle information received from the vehicle to identify which vehicle the mobile interchangeable unit is approaching and which vehicle will require the next battery module insertion. Based on the received vehicle information, a battery module to be inserted and a corresponding insertion device can then be determined.

[0074] In a further example, the vehicle information is received by communication means of the device via a wireless communication network. For example, the communication means of the device then comprise a mobile radio interface which can receive the vehicle information from the backend server via a mobile radio network. The backend server can be understood, for example, as a management server at which it is determined into which vehicle which battery module is to be inserted and / or removed by a mobile exchange unit (e.g. from a plurality of mobile exchange units). Vehicle information transmitted from the backend server to the device therefore represents, for example, a vehicle which was previously determined by the backend server and into which a battery module is to be inserted next.Advantageously, the received vehicle information can be used to determine an insertion device, in particular if the mobile exchange unit transports a large number of battery modules at the same time and thus drives to several vehicles one after the other in order to insert the battery modules into vehicles determined by the backend server.

[0075] In an exemplary embodiment, the device according to the present disclosure further comprises: Movement means for moving the mobile exchange unit comprising a motor drive and / or a plurality of wheels; and / or the at least one insertion device; and / or the at least one removal device; and / or communication means for communication with the backend server and / or the vehicle.

[0076] The device according to the present disclosure can be part of the mobile interchangeable unit and can be understood, for example, as a control device of the mobile interchangeable unit, which is connected to individual components and different means of the mobile interchangeable unit. Furthermore, the device can comprise at least some means or all of the means of the mobile interchangeable unit. For example, in addition to a control device of the mobile interchangeable unit, the device can comprise movement means (e.g. a motor drive and / or a plurality of wheels), insertion device(s), removal device(s) and / or communication means (e.g. a short-range radio communication interface and / or a mobile radio interface) of the mobile interchangeable unit. For example, the device can comprise all of the means of the mobile interchangeable unit and thus correspond, for example, to the mobile interchangeable unit.

[0077] Furthermore, according to the present disclosure, a system is disclosed which comprises at least the device according to the present disclosure and the mobile exchange unit, wherein the system may, for example, further comprise the vehicle and / or the backend server. If the device according to the present disclosure corresponds, for example, to the mobile exchange unit, the disclosed system comprises at least the device as well as the vehicle and / or the backend server.

[0078] The above-described embodiments and exemplary configurations of the present disclosure are also to be understood as disclosed in all combinations with one another. In particular, the disclosure of a method step also applies as a disclosure of means for carrying out the respective method step. Likewise, the disclosure of means for carrying out a method step also applies as a disclosure of the method step itself.

[0079] Further advantageous exemplary embodiments of the present disclosure can be found in the following detailed description of some exemplary embodiments, particularly in conjunction with the figures. However, the accompanying figures are intended only for the purpose of clarification and not to determine the scope of the claims. The accompanying drawings are not necessarily to scale and are intended merely to reflect the general concept of the present disclosure by way of example. In particular, features contained in the figures should in no way be considered a necessary part of the present invention.

[0080] They show: Fig. 1a and 1b are schematic representations of an exemplary embodiment according to the present disclosure; Fig. 2 is a schematic representation of an exemplary embodiment of sensor means according to the present disclosure; Fig. 3a, 3b and 3c are schematic representations of a further exemplary embodiment according to the present disclosure; Fig. 4 is a flowchart of an exemplary embodiment of the method according to the present disclosure; Fig. 5 is a schematic representation of an exemplary embodiment of the device according to the present disclosure; and Fig. 6 is exemplary embodiments of storage media. Detailed description of some exemplary embodiments

[0081] Fig. 1a and Fig. 1b show schematic representations of an exemplary embodiment according to the present disclosure. Fig. 1ashows an example of a mobile exchange unit 100 which is navigated to a first position below a vehicle 160.

[0082] The mobile interchangeable unit 100 is shown as an unmanned transport vehicle (e.g., a mobile robot), wherein the mobile interchangeable unit 100 comprises, among other things, at least one insertion device 110 with a battery module 120 placed thereon. Furthermore, the mobile interchangeable unit 100 comprises movement means in the form of a plurality of wheels 130 and communication means 140 (e.g., an antenna) for wireless radio communication. In particular, the mobile interchangeable unit 100 has a control device 150, which is connected to the other components of the mobile interchangeable unit 100. The control device 150 can therefore be understood as an example of the device according to the present disclosure.

[0083] The insertion device 110 comprises a lifting mechanism configured to lift the platform and the battery module 120 placed thereon. This lifting mechanism is shown as a scissor mechanism by way of example, but can also be implemented in another way. Inserting the battery module 120 into the vehicle 160 comprises, for example, inserting the battery module 120 into a battery module compartment 165 in the underbody of the vehicle 160. As part of the insertion or subsequent to inserting the battery module into the vehicle 160, the battery module 120 can be fastened (e.g., fixed) in the vehicle 160, for example, by sliding the battery module 120 into a holding device (e.g., comprising a locking mechanism) of the vehicle 160 and being held there.The battery module 120 to be inserted is a charged battery module which replaces a previously discharged battery module in the vehicle 160. For example, such a discharged battery module is removed from the vehicle 160 before the battery module 120 placed on the insertion device 110 is inserted into the vehicle 160. For this purpose, the mobile exchange unit 100 can, for example, have at least one removal device (not shown in . Fig. 1a ).

[0084] Vehicle 160 is a vehicle in which one or more battery modules are to be replaced. In particular, the battery module 120 transported by the mobile exchange unit 100 is to be introduced into the vehicle 160, for example, to replace a previously discharged battery module of the vehicle 160. The vehicle 160 is illustrated by way of example as a truck that is at least partially electrically powered.

[0085] The communication means 140 can enable, for example, wireless communication between the mobile interchangeable unit 100 and the vehicle 160 by providing a wireless communication connection 180 between the mobile interchangeable unit 100 and the vehicle 160. The wireless communication connection 180 is based, for example, on optical transmission and / or by means of communication based on electrical, magnetic, or electromagnetic signals or fields, in particular short-range communication (e.g., based on Bluetooth or WLAN). For example, the control device 150 receives, using the communication means 140, vehicle information from the vehicle 160 via the communication connection 180, which includes an identifier of the vehicle 160.

[0086] In addition, Fig. 1aa backend server 170, which can be understood, for example, as a management server. For example, the backend server 170 determines which battery module is to be inserted and / or removed into which vehicle by the mobile exchange unit 100 (e.g., from a plurality of mobile exchange units). Battery module information transmitted from the backend server 170 to the mobile exchange unit 100 therefore represents, for example, the battery module 120 that was previously determined by the backend server 170 and that is to be inserted into the vehicle 160. Such battery module information can be received using the communication means 140 of the mobile exchange unit 100 via a wireless communication link 185.For example, the communication means 140 then comprise a mobile radio interface which can receive the battery module information and / or vehicle information from the backend server 170 via the wireless communication connection 185.

[0087] Fig. 1b shows a top view of the Fig. 1aillustrated vehicle 160 and the mobile exchange unit 100. In this view, it can be seen by way of example that the mobile exchange unit 100 has two insertion devices next to one another (e.g. at the same height), with a battery module 120 being placed on one insertion device and the further battery module 125 being placed on the other insertion device. For example, the battery modules 120 and 125 placed on the respective insertion devices are both to be inserted into the vehicle 160, while in another example they are each intended for a different vehicle, with these multiple vehicles being approached one after the other by the mobile exchange unit 100 in order to insert the corresponding battery modules 120 and 125.

[0088] Fig. 2 shows a schematic representation of an exemplary embodiment of sensor means 210 according to the present disclosure. In particular, the Fig. 2 an excerpt from the Fig. 1(marked with "II" in Fig. 1 ) and therein the mobile exchange unit 100, the control device 150, the insertion device 110 and the battery module 120 placed on the insertion device 110. In addition, the Fig. 2 a code scanner 210 (e.g., an optical sensor such as a camera) as sensor means, and a barcode 220 printed on the housing of the battery module 120. The code scanner is, for example, connected to the control device 150 or can be understood as part of the control device 150. The battery module information represented by the barcode 220 contains an identifier (e.g., a designation or an address) that uniquely identifies the battery module 120. The control device 150 can obtain the battery module information represented by the barcode 220 by the code scanner 210 electronically capturing the barcode 220 and then forwarding it to the control device 150.

[0089] Alternatively or in addition to the code scanner 210, the sensor means may also comprise an electronic receiver which receives the battery module information in the form of an electrical signal via short-range radio communication (e.g., Bluetooth, NFC, or RFID) from the battery module 120

[0090] Fig. 2shows, by way of example, a single code scanner 220 and a single battery module 120 placed on an insertion device 110. In addition, the mobile exchange unit 100 can comprise a plurality of insertion devices and a plurality of code scanners (e.g., a respective code scanner for each insertion device). Such code scanners can each be arranged on or at least near the respective insertion device of the mobile exchange unit 100. For example, a code scanner is located on each platform of an insertion device on which a corresponding battery module can be placed. If a battery module should be placed on a specific insertion device (as in Fig. 2For example, (shown as an example for the battery module 120), the barcode applied to this battery module is scanned by a code scanner arranged on the platform of the insertion device and transmitted to the control device 150 as battery module information. For example, the control device 150 stores (e.g., stored in an electronic memory of the control device 150) which code scanner is arranged on which respective insertion device of the mobile exchange unit 100. By receiving the battery module information at the control device 150 from a specific code scanner, the battery module information additionally indicates (e.g., at least implicitly) on which insertion device the battery module represented by the battery module information is placed.

[0091] Fig. 3a , 3b and 3cshow schematic representations of another exemplary embodiment according to the present disclosure.

[0092] Fig. 3a shows similar to the Fig. 1a a mobile interchangeable unit 300 as an unmanned transport vehicle (e.g. a mobile robot), wherein the mobile interchangeable unit 300 comprises an insertion device 310 with a battery module 320 placed thereon and also a further insertion device 315 with a further battery module 325 placed thereon. Furthermore, the mobile interchangeable unit 300 comprises movement means in the form of several wheels 330 and communication means 340 (e.g. an antenna) for wireless radio communication. In particular, the mobile interchangeable unit has a control device 350 which is connected to the other components of the mobile interchangeable unit 300. The control device 350 can therefore be understood as an example of the device according to the present disclosure.

[0093] Fig. 3a shows, by way of example, the mobile exchange unit 300, which is navigated by the control device 350 to a first position below a vehicle 360. Fig. 3b shows the mobile exchange unit 300 at a later time than in Fig. 3a , wherein the mobile exchange unit 300 is arranged according to Fig. 3b in the first position below the vehicle 360, while the battery module 320 is inserted into the vehicle 360 ​​with the insertion device 310. Fig. 3c shows the mobile exchange unit 300 at a later time than in Fig. 3b , wherein the mobile exchange unit 300 is arranged according to Fig. 3c in a second position below the vehicle 360, while the further battery module 325 is introduced into the vehicle 360 ​​with the further introduction device 315.

[0094] After a Fig. 3bAfter the battery module 320 has been inserted as shown, the mobile exchange unit 300 can be navigated to a second position below the vehicle 360 ​​before, as shown in Fig. 3c shown the additional battery module 325 is inserted into the vehicle 360. The first position is selected such that the insertion device 310 is located under the battery module compartment 365 in the underbody of the vehicle 360. The second position is selected such that the insertion device 315 is located under the battery module compartment 365 in the underbody of the vehicle 360. Accordingly, if the mobile exchange unit 300 is in the second position (see Fig. 3c), the further battery module 325 placed on the further insertion device 315 can be inserted into the battery module compartment 365 by lifting the platform of the insertion device 315, so that the further battery module 325 is inserted within the battery module compartment 365 below the previously inserted battery module 320.

[0095] Advantageously, by navigating the mobile exchange unit 300 from the first to the second position, the two battery modules 320 and 325 can be introduced into the vehicle 360 ​​such that they are arranged one below the other in the form of a battery stack 328 within the battery module compartment 365 of the vehicle 360. However, the battery modules 320 and 325 arranged one above the other in this way are advantageously located on different insertion devices 310 and 315 during transport by the mobile exchange unit 300, so that the overall height of the loaded mobile exchange unit 300 is reduced and movement underneath the vehicle 360 ​​is enabled.

[0096] Within the battery stack 328, the battery modules 320 and 325 arranged one below the other are electrically connected to one another, for example, by being electrically connected in series or in parallel (e.g., to achieve a desired electrical voltage or electrical capacity). An electrical connection between the two battery modules 320 and 325 can be achieved, for example, by additional connecting structures of the battery modules.

[0097] Fig. 4 shows a flowchart of an exemplary embodiment of a method 400 according to the present disclosure. The following describes the method steps 410, 420 and 430 of the method 400 by way of example with respect to the Fig. 1a and in Fig. 1b The exemplary embodiment shown is described. It is assumed, for example, that method steps 410, 420, and 430 are carried out by the control device 150 of the mobile exchange unit 100.

[0098] Step 410 includes navigating a mobile exchange unit to a first position beneath a vehicle.

[0099] For example, the control device 150 controls the movement means 130 of the mobile interchangeable unit 100 such that the mobile interchangeable unit 100 moves from its current position to the first position. The mobile interchangeable unit 100 moves to the first position at least partially autonomously, wherein the control device 150 uses, for example, sensors such as cameras, ultrasonic sensors, or infrared sensors to detect and avoid obstacles on the way to the first position. Alternatively or additionally, the mobile interchangeable unit 100 can use location sensors (e.g., one or more GPS sensors) to navigate the mobile interchangeable unit 100 to the first position.

[0100] Step 420 comprises determining at least one insertion device of the mobile exchange unit, wherein the at least one insertion device is configured to insert a battery module placed on the insertion device into the vehicle.

[0101] For example, the control device 150 determines the insertion device 110 of the mobile interchangeable unit 100 by the control device 150 selecting the insertion device 110. The mobile interchangeable unit 100 comprises, for example, two insertion devices arranged next to one another, wherein determining an insertion device comprises selecting the insertion device 110. For example, the insertion device 100 is selected according to a predetermined order. In a further example, the insertion device 110 is determined depending on the battery module 120 that is placed on the insertion device 110. For example, based on information that identifies the battery module 120 to be inserted into the vehicle 160, the corresponding insertion device 110 on which the identified battery module 120 is placed is determined.For this purpose, information about which battery module is placed on which insertion device of the two insertion devices of the mobile exchange unit is stored in an electronic memory of the control device 150, for example.

[0102] In another example, determining the insertion device 110 in step 420 may be based on battery module information that identifies the battery module 120

[0103] Such battery module information can, for example, indicate which battery module is placed on which insertion device of the mobile exchange unit 100. For example, the code scanner 210 of the mobile exchange unit 100 (see Fig. 2) the barcode 220 printed on the housing of the battery module 120, wherein the barcode 220 represents battery module information which contains an identifier of the battery module 120. The battery module information detected by the code scanner 210 is then transmitted to the control device 150. Information is stored in the control device 150 that the code scanner 210 is arranged on the platform of the insertion device 110, so that the battery module information transmitted by the code scanner 210 to the control device 150 additionally indicates (e.g. at least implicitly) that the battery module 120 represented by the battery module information is placed on the insertion device 110. For example, information is stored in the control device 150 according to which the battery module 120 is to be inserted into the vehicle 160.Accordingly, in step 420, the insertion device 110 is determined based on the fact that the battery module information indicates that the battery module 120 to be inserted into the vehicle 160 is placed on the insertion device 110.

[0104] Battery module information may also identify, for example, a battery module to be installed in the vehicle 160. As in Fig. 1bAs shown, the mobile exchange unit 100 has two insertion devices on which respective battery modules 120 and 125 are placed. A received piece of battery module information then represents, for example, the battery module 120 that is to be inserted into the vehicle 160. In such an example, the battery module 125 placed on the remaining insertion device may, for example, be intended for another vehicle and may therefore be inserted into this other vehicle at a later time. The determination in step 420 is then based at least partially on the received battery module information. For example, if the battery module information represents the battery module 120 that is to be inserted into the vehicle 160, the insertion device 110 on which the battery module 120 represented by the battery module information is placed is determined based on the battery module information.In such an example, the determination of the insertion device can additionally be based on information (which is stored, for example, in an electronic memory of the control device 150) which indicates, for the two insertion devices of the mobile exchange unit 100, whether and which battery module is placed on the respective insertion device. For example, the battery module information is received by communication means 140 from the backend server 170 via a mobile radio network, wherein the backend server 170 can be understood as a management server on which it is determined in which vehicle which battery module is to be inserted and / or removed by the mobile exchange unit 100 (for example from a plurality of mobile exchange units).Battery module information transmitted from the backend server 170 to the control device 150 therefore represents the battery module 120 that was previously determined by the backend server 170 and that is to be introduced into the vehicle 160.

[0105] In another example, determining the insertion device 110 in step 420 may be based on vehicle information, wherein the vehicle information identifies, for example, the vehicle 160 under which the mobile interchangeable unit 100 in the first position is located and into which the battery module 120 placed on the insertion device 110 of the mobile interchangeable unit 100 is to be inserted. The vehicle information may be obtained, for example, at the control device 150 from the backend server 170 via a cellular network (e.g., via the communication link 185) or from the vehicle 160 via short-range radio communication (e.g., Bluetooth, NFC, or RFID via the communication link 180).

[0106] Step 430 includes causing the battery module placed on the particular at least one insertion device to be inserted into the vehicle.

[0107] For example, the control device 150 controls the insertion device 110 determined in step 420, so that a lifting mechanism of the insertion device 110 is activated, thus causing this lifting mechanism to lift the battery module 120 placed on the platform of the insertion device 110 and to place it into the vehicle 160. In an example in which more than one insertion device of the mobile exchange unit 100 was determined in the previous step 420, for example, in step 430, for each of the determined insertion devices, the battery module placed on the respective insertion device is successively inserted into the vehicle.

[0108] Fig. 5 shows a schematic representation of an exemplary embodiment of the device 50 according to the present disclosure. For example, the device 50 can be used as a control device 150 of the Fig. 1a and Fig. 1bshown mobile exchange unit 100 or as control device 350 of the in Fig. 3a to 3c shown mobile exchange unit 300.

[0109] The control device 50 comprises, for example, a processor 55. A processor is understood to be, for example, a microprocessor, a microcontrol unit, a microcontroller, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), or a field-programmable gate array (FPGA). It is understood that the control device 50 can also comprise multiple processors 55.

[0110] The processor 55 executes program instructions stored in program memory 51 and stores, for example, intermediate results or the like in working memory 52. ​​The program memory 51 contains, for example, program instructions of a computer program according to the present disclosure, which includes program instructions that cause the processor 55 to execute the method according to the present disclosure (e.g., the method 400 according to Fig. 4 ) when the processor 55 executes the program instructions stored in program memory 51.

[0111] Program memory 51 further contains, for example, an operating system of the control device 50, which is at least partially loaded into main memory 52 upon startup of the control device 50 and executed by the processor 55. In particular, upon startup of the control device 50, at least a portion of the core of the operating system is loaded into main memory 52 and executed by the processor 55.

[0112] An example of an operating system is a Windows, UNIX, Linux, Android, Apple iOS, and / or MAC OS operating system. The operating system enables, in particular, the use of the control device 50 for data processing. For example, it manages resources such as the program memory 51 and the main memory 52 and, among other things, provides basic functions to other computer programs through programming interfaces and controls the execution of computer programs.

[0113] A program memory is, for example, a non-volatile memory such as flash memory, magnetic memory, EEPROM (electrically erasable programmable read-only memory), and / or optical memory. A working memory is, for example, a volatile or non-volatile memory, in particular a random access memory (RAM) such as static RAM (SRAM), dynamic RAM (DRAM), ferroelectric RAM (FeRAM), and / or magnetic RAM (MRAM).

[0114] The payload memory 53 is used to store data required for program execution. In this case, this may be, for example, battery module information and / or vehicle information.

[0115] In addition, the control device 50 can be connected to a communication interface 54 of the mobile exchange unit 100 (e.g. the Fig. 1a and Fig. 1bshown communication means 140). The communication interface 54 comprises, for example, a mobile radio interface (e.g., for receiving battery module information or vehicle information from the backend server 170) and / or a short-range radio communication interface (e.g., Bluetooth, NFC, or RFID for receiving battery module information from a battery module or for receiving vehicle information from a vehicle).

[0116] Furthermore, the control device 50 is connected, for example, to one or more sensors 57. The sensor 57 may, for example, comprise a code scanner (e.g., an optical sensor such as a camera) that can scan an optically detectable code. In another example, the sensors 57 may comprise an electronic receiver that can receive battery module information in the form of an electrical signal from the battery module via short-range radio communication (e.g., Bluetooth, NFC, or RFID).

[0117] The control device 50 is also connected to movement means 56, which may be, for example, the wheels 130 of the mobile exchange unit 100 and a steering mechanism of these wheels. The control device 50 can control these movement means 56 to move the mobile exchange unit 100 and, for example, to navigate to a first position below the vehicle 160.

[0118] The control device 50 is also connected to at least one removal device 58 and at least one insertion device 59. For example, the control device 50 can control the insertion device 59 (e.g., the insertion device 110 in Fig. 1a ) so that a lifting mechanism of this particular insertion device 59 is activated and thus causes this lifting mechanism to lift the battery module placed on a platform of the insertion device 59

[0119] As described above, the communication interface 54, the movement means 56, the sensors 57, and / or the removal and insertion devices 58, 59 can be connected to the control device 50 so that they can be controlled, for example, by the control device 50 and transmit information to the control device. In other examples, the communication interface 54, the movement means 56, the sensors 57, and / or the removal and insertion devices 58, 59 can additionally be understood as part of the control device 50.

[0120] Fig. 6 shows exemplary embodiments of storage media on which, for example, a computer program according to the present disclosure may be stored. The storage medium may, for example, be a magnetic, electrical, optical and / or other storage medium. The storage medium may, for example, be part of a processor (e.g., processor 55 of Fig. 5), for example a (non-volatile or volatile) program memory of the processor or a part thereof (e.g. program memory 51 in Fig. 5 ). Embodiments of a storage medium are a flash memory 60, an SSD hard drive 61, a magnetic hard drive 62, a memory card 63, a memory stick 65 (e.g., a USB stick), a CD-ROM or DVD 65, or a floppy disk 66.

[0121] The exemplary embodiments of the present disclosure described in this specification are also to be understood as disclosed in all combinations with one another. In particular, the description of a feature encompassed by an embodiment Unless explicitly stated otherwise, this feature should not be understood in this case as being essential or essential for the function of the exemplary embodiment. The sequence of the method steps described in this disclosure in the individual flowcharts is not mandatory; alternative sequences of the method steps are conceivable unless otherwise stated. The method steps can be implemented in various ways; for example, an implementation in software (through program instructions), hardware, or a combination of both is conceivable for implementing the method steps.

[0122] Terms used in the claims such as "comprise," "have," "include," "contain," and the like do not exclude further elements or steps. The phrase "at least partially" encompasses both "partially" and "completely." The phrase "and / or" is intended to indicate that both the alternative and the combination are disclosed; thus, "A and / or B" means "(A) or (B) or (A and B)." A plurality of units, persons, or the like, in the context of this specification, means multiple units, persons, or the like. The use of the indefinite article does not exclude a plurality. A single device may perform the functions of multiple units or devices recited in the claims. Reference numerals indicated in the claims are not to be construed as limitations on the means and steps employed.

[0123] The following embodiments are disclosed as part of the present disclosure: Embodiment 1: A device comprising means configured to: navigate a mobile interchangeable unit to a first position beneath a vehicle; determine at least one insertion device of the mobile interchangeable unit, wherein the at least one insertion device is configured to insert a battery module placed on the insertion device into the vehicle; and effect the insertion of the battery module placed on the determined at least one insertion device into the vehicle.Embodiment 2: The device according to embodiment 1, wherein the mobile exchange unit, including the at least one insertion device, has a plurality of insertion devices, wherein the insertion devices are each configured to insert a battery module placed on the respective insertion device, and wherein the means of the device are further configured to: determine at least one further insertion device from the plurality of insertion devices; and effect the insertion of a further battery module placed on the determined at least one further insertion device into the vehicle.Embodiment 3: The device according to embodiment 2, wherein the means of the device are further configured to: navigate the mobile exchange unit, after the introduction of the at least one battery module into the vehicle and before the introduction of the at least one further battery module into the vehicle, from the first position to a second position below the vehicle. Embodiment 4: The device according to embodiment 1, wherein the means of the device are further configured to: effect, after the introduction of the at least one battery module, the introduction of at least one further battery module, placed on the specific at least one introduction device, into the vehicle.Embodiment 5: The device according to one of embodiments 1 to 4, wherein the at least one insertion device and / or the plurality of insertion devices of the mobile exchange unit are configured to insert at least one battery module and the at least one further battery module into the vehicle such that the at least one battery module and the at least one further battery module form a single battery stack within the vehicle. Embodiment 6: The device according to embodiment 5, wherein the at least one battery module and the at least one further battery module are arranged one below the other within the battery stack and / or are electrically connected to one another.Embodiment 7: The device according to one of embodiments 1 to 6, wherein the means are further configured to: effect the removal of a battery module from the vehicle before the introduction of the at least one and / or the at least one further battery module into the vehicle, wherein the mobile exchange unit has at least one removal device for removing a battery module from the vehicle. Embodiment 8: The device according to one of embodiments 1 to 7, wherein the means are further configured to: obtain at least one piece of battery module information, wherein the battery module information represents a battery module, and wherein the determination of the at least one introduction device is based at least partially on the obtained battery module information.Embodiment 9: The device according to claim 8, the device further comprising sensor means configured to obtain the battery module information from the battery module represented by the battery module information. Embodiment 10: The device according to embodiment 8, the device further comprising communication means configured to receive the battery module information from a backend server.Embodiment 11: The device according to one of embodiments 1 to 10, wherein the means are further configured to: obtain vehicle information, wherein the vehicle information represents the vehicle and wherein the determination of the at least one introduction device is based at least partially on the obtained vehicle information. Embodiment 12: The device according to one of embodiments 1 to 11, the device further comprising communication means configured to receive the vehicle information from the vehicle or from a backend server.Embodiment 13: The device according to one of embodiments 1 to 12, wherein the device further comprises: movement means for moving the mobile interchangeable unit comprising a motor drive and / or a plurality of wheels; and / or the at least one insertion device; and / or the at least one removal device; and / or communication means for communicating with the backend server and / or the vehicle. Embodiment 14: A method comprising: navigating a mobile interchangeable unit to a first position underneath a vehicle; determining at least one insertion device of the mobile interchangeable unit, wherein the at least one insertion device is configured to insert a battery module placed on the insertion device into the vehicle; and effecting the insertion of the battery module placed on the determined at least one insertion device into the vehicle.Embodiment 15: A computer program comprising instructions that cause a device to perform the method steps according to embodiment 14.

Claims

1. Device (150; 50; 350), comprising means (51; 52; 53; 55) configured to: - navigate (410) a mobile exchange unit (100; 300) to a first position underneath a vehicle (160); - determine (420) at least one insertion device (110; 310) of the mobile exchange unit (100; 300), wherein the at least one insertion device (110; 310) is configured to insert a battery module (120; 320) placed on the insertion device into the vehicle (160); and - causing the introduction (430) of the battery module (120; 320) placed on the specific at least one introduction device (110) into the vehicle (160), wherein the device (150; 350; 50) is part of the mobile exchange unit (100; 300) and wherein the means (51; 52; 53; 55) are further configured to: - obtain vehicle information, wherein the vehicle information represents the vehicle (160; 360) and wherein the determination of the at least one introduction device (110;310) is based at least in part on the received vehicle information.; 2. The device (350; 50) according to claim 1, wherein the mobile exchange unit (300) including the at least one insertion device (310) has a plurality of insertion devices (310; 315), wherein the insertion devices are each configured to insert a battery module (320; 325) placed on the respective insertion device (310; 315), and wherein the means (51; 52; 53; 55) of the device (350; 50) are further configured to: - determine at least one further insertion device (315) from the plurality of insertion devices (310; 315); and - effect the insertion of a further battery module (325) placed on the determined at least one further insertion device (315) into the vehicle (360).

3. The device (350; 50) according to claim 2, wherein the means (51; 52; 53; 55) of the device (350; 50) are further configured to: - navigate the mobile exchange unit (300), after the introduction of the at least one battery module (320) into the vehicle (360) and before the introduction of the at least one further battery module (325) into the vehicle (360), from the first position to a second position below the vehicle (360).

4. The device (150; 50) according to claim 1, wherein the means (51; 52; 53; 55) of the device (150; 50) are further configured to: - cause, after the insertion of the at least one battery module (120), the insertion of at least one further battery module placed on the specific at least one insertion device (110) into the vehicle (160).

5. The device (150; 350; 50) according to one of claims 1 to 4, wherein the at least one insertion device (110) and / or the plurality of insertion devices (310; 315) of the mobile exchange unit (100; 300) are configured to insert the at least one battery module (120; 320) and the at least one further battery module (325) into the vehicle (160; 360) in such a way that the at least one battery module (320) and the at least one further battery module (325) form a single battery stack (328) within the vehicle.

6. The device (150; 350; 50) according to claim 5, wherein the at least one battery module (120; 320) and the at least one further battery module (325) are arranged one below the other within the battery stack (328) and / or are electrically connected to one another.

7. The device (150; 350; 50) according to one of claims 1 to 6, wherein the means (51; 52; 53; 55) are further configured to: - effect the removal of a battery module from the vehicle (160; 360) before introducing the at least one and / or the at least one further battery module (120; 320; 325) into the vehicle (160; 360), wherein the mobile exchange unit (100; 300) has at least one removal device for removing a battery module from the vehicle (160; 360) 8. The device (150; 350; 50) according to one of claims 1 to 7, wherein the means (51; 52; 53; 55) are further configured to: - obtain at least one battery module information, wherein the battery module information represents a battery module, and wherein the determination (420) of the at least one insertion device (110; 310) is based at least partially on the obtained battery module information 9. The device (150; 350; 50) according to claim 8, the device further comprising sensor means (210; 57) configured to receive the battery module information (220) from the battery module (120) represented by the battery module information.

10. The device (150;350;50) according to claim 8, the device (150;350;50) further comprising communication means (140;340;54) configured to receive the battery module information from a backend server (170;370).

11. The device (150; 350; 50) according to one of claims 1 to 10, the device (150; 350; 50) further comprising communication means (140; 340; 54) configured to receive the vehicle information from the vehicle (160; 360) or from a backend server (170; 370).

12. The device (150; 350; 50) according to one of claims 1 to 11, wherein the device (150; 350; 50) further comprises: - movement means (56) for moving the mobile exchange unit (100; 300) comprising a motor drive and / or a plurality of wheels (130; 330); and / or - the at least one insertion device (110; 310; 315); and / or - the at least one removal device; and / or - communication means (140; 340; 54) for communicating with the backend server (170; 370) and / or the vehicle (160; 360).

13. A method (400) carried out by a device (150; 50; 350) which is part of a mobile interchangeable unit (100; 300), the method comprising: - navigating (410) the mobile interchangeable unit (100; 300) to a first position underneath a vehicle (160); - determining (420) at least one insertion device (110) of the mobile interchangeable unit (100; 300), the at least one insertion device (110) being configured to insert a battery module (120; 320) placed on the insertion device into the vehicle (160); and - causing the insertion (430) of the battery module (120; 320) placed on the determined at least one insertion device (110) into the vehicle (160), wherein the method further comprises: - obtaining vehicle information, wherein the vehicle information represents the vehicle (160; 360) and wherein the determination of the at least one insertion device (110; 310) is based at least partially on the obtained vehicle information.

14. A computer program comprising instructions that cause a device (150; 350; 50) to perform the method steps (410; 420; 430) according to claim 13

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